
The ABB DO818 3BSE069053R1 is a 32-channel, 24V digital output module designed for use with the S800 I/O system. It provides a reliable and efficient solution for controlling various types of electrical loads in industrial automation applications. The module features high-density output channels and robust protection mechanisms, making it suitable for demanding industrial environments.
Detailed data
|
Isolation |
Groupwise isolated from ground |
|
Output load |
< 0.32 Ω |
|
Maximum field cable length |
600 meters (656 yards) |
|
Rated insulation voltage |
50 V |
|
Dielectric test voltage |
500 V a.c. |
|
Power dissipation |
Typ 2.8 W |
|
Current consumption +5 V Modulebus |
Typ 70 mA |
|
Current consumption +24 V Modulebus |
0 |
|
Current consumption +24 V external |
40 mA |
DO818 3BSE069053R1 Description

The DO818 is a 32 channel 24 V digital output module for the S800 I/O. This module has 16 digital outputs. The output voltage range is 12 to 32 volt and the maximum continuous output current is 0.5 A. The outputs are protected against short circuits, over voltage and over temperature. The outputs are divided into two individually isolated groups with 16 output channels and one voltage supervision input in each group. Each output channel consists of a short circuit and over temperature protected high side driver, EMC protection components, inductive load suppression, output state indication LED and optical isolation barrier. The process voltage supervision input give channel error signals if the voltage disappears. The error signal can be read through the ModuleBus.
FAQ
What is the maximum output current per channel?
The maximum output current per channel is 0.5A.
Can I connect different types of loads to this module?
Yes, the module can drive a variety of loads, such as relays, solenoids, and indicator lights.
How do I configure the module?
The module can be configured using the ABB engineering tool.
What is the purpose of the isolation feature?
The isolation feature protects the controller from potential damage caused by short circuits or overvoltage on the output channels.
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| sales manager: | Vicky |
| Email: | sales7@apterpower.com |
| Call or Whatsapp: | +8618030175807 |







